4.6 Article

Trapped-ion quantum simulation of excitation transport: Disordered, noisy, and long-range connected quantum networks

期刊

PHYSICAL REVIEW A
卷 97, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.97.023606

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资金

  1. Deutsche Forschungsgemeinschaft as part of the CRC 1119 CROSSING
  2. Austrian Science Fund (FWF) through SFB FoQuS [F4016-N23]
  3. European Commission via the European Research Council [694561]

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The transport of excitations governs fundamental properties of matter. Particularly rich physics emerges in the interplay between disorder and environmental noise, even in small systems such as photosynthetic biomolecules. Counterintuitively, noise can enhance coherent quantum transport, which has been proposed as a mechanism behind the high transport efficiencies observed in photosynthetic complexes. This effect has been called environment-assisted quantum transport. Here, we propose a quantum simulation of the excitation transport in an open quantum network, taking advantage of the high controllability of current trapped-ion experiments. Our scheme allows for the controlled study of various different aspects of the excitation transfer, ranging from the influence of static disorder and interaction range, over the effect of Markovian and non-Markovian dephasing, to the impact of a continuous insertion of excitations. Our paper discusses experimental error sources and realistic parameters, showing that it can be implemented in state-of-the-art ion-chain experiments.

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